A blower assembly includes a rotor assembly having a shaft and a stator assembly coupled to the rotor assembly. A shrouded fan assembly is coupled to the shaft so as to generate an air flow when the shaft rotates. A unitary diffuser having a fan side opposite a motor side, is included wherein the fan side is coupled to the shrouded fan assembly. The unitary diffuser has ports for transferring the air flow from said fan side to said motor side. The motor side has a stator wall that partially encloses the stator assembly and the rotor assembly. An end cap is coupled to the stator wall for further enclosing the stator assembly and the rotor assembly. The assembly also includes a plurality of termination boxes disposed about the periphery of the stator wall for terminating the wire windings of the stator assembly. The end cap has at least one tab, and the stator wall has at least one tab receptacle that slidably receives the tab. A spring is interposed between the end cap and the rotor assembly to bias the end cap into a secure position with respect to the stator wall.
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14. A diffuser for a blower assembly, wherein the diffuser carries a motor assembly and a shrouded fan assembly, the motor assembly having a shaft that rotates a fan in the shrouded fan assembly, the diffuser comprising:
a plate having a fan side opposite a motor side and a shaft hole therethrough, said plate having a plurality of ports extending therethrough; a stator wall extending from said motor side, said stator wall partially enclosing the motor assembly; and an end cap coupled to said stator wall for further enclosing the motor assembly, wherein said end cap has at least one tab and wherein said stator wall has at least one tab receptacle, said at least one tab receivable in said at least one tab receptacle to releasably secure said end cap to said stator wall.
10. A blower assembly, comprising:
a rotor assembly having a shaft; a stator assembly coupled to said rotor assembly; a shrouded fan assembly coupled to said shaft so as to generate an air flow when said shaft rotates; a unitary diffuser having a fan side opposite a motor side, said fan side coupled to said shrouded fan assembly, said unitary diffuser having ports for transferring the air flow from said fan side to said motor side, said motor side having a stator wall that partially encloses said stator assembly and said rotor assembly, wherein said motor side has a plurality of curvilinear vanes extending between said ports and said stator wall; an end cap coupled to and position within the said stator wall for further enclosing said stator assembly and said rotor assembly; and a cover having an outlet, wherein said cover is secured to said motor side of said unitary diffuser.
1. A blower assembly, comprising:
a rotor assembly having a shaft; a stator assembly coupled to said rotor assembly; a shrouded fan assembly coupled to said shaft so as to generate an air flow when said shaft rotates; a unitary diffuser having a fan side opposite a motor side, said fan side coupled to said shrouded fan assembly, said unitary diffuser having ports for transferring the air flow from said fan side to said motor side, said motor side having a stator wall that partially encloses said stator assembly and said rotor assembly; an end cap coupled to said stator wall for further enclosing said stator assembly and said rotor assembly; and a plurality of termination boxes disposed about the periphery of said stator wall, said stator assembly having wire windings that are terminated in at least some of said termination boxes, wherein said stator wall has a plurality of notches, each said notch is aligned with a corresponding termination box, wherein said wire windings pass through said notches.
2. The blower assembly according to
a spring interposed between said end cap and said rotor assembly to bias said end cap into a secure position.
3. The blower assembly according to
4. The blower assembly according to
a cover having an outlet, wherein said cover is secured to said motor side of said unitary diffuser.
5. The blower assembly according to
6. The blower assembly according to
a spring interposed between said end cap and said rotor assembly to bias said end cap into a secure position.
7. The blower assembly according to
8. The blower assembly according to
9. The blower assembly according to
11. The blower assembly according to
a plurality of termination boxes disposed about the periphery of said stator wall, said motor assembly having wire windings that are terminated in at least some of said termination boxes.
12. The blower assembly according to
13. The blower assembly according to
15. The diffuser according to
16. The diffuser according to
17. The diffuser according to
a spring interposed between said end cap and the motor assembly to bias said end cap into a secure position.
18. The diffuser according to
a plurality of termination boxes disposed about the periphery of said stator wall, said motor assembly having wire windings that are terminated in at least some of said termination boxes.
19. The diffuser according to
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The invention herein resides in the art of air moving device which also may be referred to as blower assemblies. More particularly, the present invention relates to a blower device which is compact and has a low manufacturing cost. Specifically, the present invention relates to a blower assembly which combines a diffuser, termination devices and a motor housing into a single component that eliminates the need for mechanical fasteners normally used to secure the aforementioned components to one another.
It is known to use fan/blower assemblies in a wide variety of applications ranging from vacuum cleaners to assisted breathing apparatuses. Indeed, these blowers hold sheets of paper in place as ink-jet printer heads pass over and dispense ink thereon. Therefore, it is critical that the fan/blower assembly generate a dependable air flow to securely hold the paper in place during the printing process and to prevent the printed product from smudging.
Of course, cost and product quality are critical factors in manufacturing a blower assembly that can be adapted for printers as well as other applications. Typically, a blower assembly requires multiple manufacture of parts that are assembled to one another. In particular, prior art blower assemblies utilize a motor assembly that includes a rotor and a stator wherein the rotor carries a shaft. Motor windings around the stator are terminated to various tab devices. After termination, the stator is secured within a housing whereupon the rotor/shaft is installed. The housing is typically employed for holding the stator and a diffuser while a shrouded fan is rotated by the shaft to draw air into the shroud axially. The air is then distributed by the diffuser. The diffuser and stator are assembled to the housing with fasteners. Costs for delivering these parts to different manufacturing stations and the cost for maintaining the additional inventory can become quite prohibitive. Therefore, there is a need to simplify the assembly process while still maintaining a high quality blower assembly product.
In light of the foregoing, it is first aspect of the present invention to provide a fan/blower assembly with a one-piece air diffuser and bayonet-style end cap.
It is a further aspect of the present invention as to provide a blower assembly which includes a motor assembly that comprises a rotor and a stator, and a fan assembly driven by the motor assembly.
It is still a further aspect of the present invention is to provide a blower assembly, as set forth above, wherein a unitary diffuser is interposed between the motor assembly and the fan assembly and wherein the diffuser functions as a motor housing, a diffuser and a stator assembly termination device.
An additional aspect of the present invention is to provide a blower assembly, as set forth above, wherein the unitary diffuser provides an integral stator wall for partially enclosing the stator assembly.
A further aspect of the present invention is to provide a blower assembly, as set forth above, wherein the end cap further encloses the stator assembly and is releasably securable to the stator wall.
Yet a further aspect of the present invention is to provide a blower assembly, as set forth above, wherein the end cap has outwardly extending tabs received in a tab receptacle device provided by the stator wall, and wherein the end cap is spring-biased to lock the end cap in place with respect to the stator wall.
Still yet another aspect of the present invention is to provide a blower assembly, as set forth above, wherein a plurality of termination boxes with notches that receive motor winding wires are integral with the stator wall.
Still yet another aspect of the present invention is to provide a blower assembly wherein a cover may be attached to completely enclose the unitary diffuser on a side opposite the fan assembly to allow for uniform air flow from one end of the assembly to the other.
The foregoing and other aspects of the invention which shall become apparent as the detailed description proceeds, are achieved by a blower assembly, comprising a rotor assembly having a shaft; a stator assembly coupled to the rotor assembly; a shrouded fan assembly coupled to the shaft so as to generate an air flow when the shaft rotates; a unitary diffuser having a fan side opposite a motor side, the fan side coupled to the shrouded fan assembly, the unitary diffuser having ports for transferring the air flow from the fan side to the motor side, the motor side having a stator wall that partially encloses the stator assembly and the rotor assembly; and an end cap coupled to the stator wall for further enclosing the stator assembly and the rotor assembly.
The present invention also provides a diffuser for a blower assembly, wherein the diffuser carries a motor assembly and a shrouded fan assembly, the motor assembly having a shaft that rotates a fan in the shrouded fan assembly, the diffuser comprising a plate having a fan side opposite a motor side and a shaft hole therethrough, the plate having a plurality of ports extending therethrough; a stator wall extending from the motor side, the stator wall partially enclosing the motor assembly and an end cap coupled to the stator wall for further enclosing the motor assembly.
For a complete understanding of the objects, techniques and structure of the invention, reference should be made to the following detailed description and accompanying drawings, wherein:
Referring now to the drawings and, more particularly, to
An end cap 46 is employed to maintain the motor assembly 24 in position with respect to the unitary diffuser 22 in a manner that will be fully described below. A stainless steel wave spring 52 is interposed between the end cap 46 and the motor assembly 24 for proper positional location of the motor assembly 24 with respect to the unitary diffuser 22. In certain applications, a cover 54 may be secured to the unitary diffuser 22 by fasteners, a snap fit or other attachment mechanism, wherein the cover 54 has an outlet 56. In operation, when the motor assembly 24 is energized, the fan 40 is rotated and axially draws air in through the inlet 44. This air is moved by the fan through the diffuser 22 and is expelled about the motor assembly 24 or through the outlet 56 if the cover 54 is provided.
Referring now to
The fan side 58 includes a plate 70 which defines a top surface of the unitary diffuser 22. Spaced about the outer periphery of the plate 70 are a plurality of scalloped ramps 72 which extend downwardly from the plate 70 toward the rim 62. It will be appreciated that the ramps 72 are positioned about the outer periphery of the fan and the ramps widen as they proceed downwardly into respective ports 74 which extend from the fan side 58 through to the motor side 60. Accordingly, as the fan 40 draws air through the inlet 44 it is distributed radially and is then directed down the scalloped ramps 72 through the ports 74.
The motor side 60, which is disposed on the opposite side of the plate 70, includes a plurality of curvilinear vanes 78 which are aligned with the ports 74. These curvilinear vanes 78 facilitate the air flow through the blower assembly 20.
A stator wall 80 is preferably concentrically positioned and extends axially from the motor side of the plate 70. The stator wall 80 includes an outer surface 82 opposite an inner surface 84 which are joined to one another by a top edge 86. Disposed about the outer surface 82 of the stator wall 80 are a plurality of termination boxes 88 which may also be integral with the underside of the plate 70. Each termination box 88 is provided with a corresponding notch 90.
Depending upon the configuration of the motor--the number of poles and the like--a terminal 91 may be installed in some or all of the termination boxes 88. In any event, a wire 92 from the windings 28 is terminated in the terminal 91. In order to transmit electricity to the blower assembly 20 a wire 94 with an attached spade terminal 96 is inserted into the terminal 91. A plurality of holes 98 may be distributed about the outer periphery of the diffuser 22 as shown. These holes are for receiving fasteners that secure the cover 54 to the assembly if desired. The cover 54 may also be press fit or snap fit onto the rim 62.
Referring now to
Referring now to
The spring side 114 provides a cap ring 124 extending from the outer periphery of the disk 110. A plurality of pilot tabs 126 extend outwardly from the ring 124. A bearing collar 130 is concentric with the cap ring 124 and extends from an inner periphery of the spring side 114. A plurality of ribs 132 provide structural support between the bearing collar 130 and the cap ring 124.
With reference to
In the next phase of the assembly, the end cap 46 is assembled to the stator wall 80. First, the wave spring 52 is positioned within the bearing collar 130. A bit of lubricating grease may be disposed about the bearing collar area. Next the cap is oriented with the hex boss facing outwardly and the pilot tabs 126 are aligned with the corresponding receptacles 100. In particular, the tabs 126 fit into the entry channels 102 and the end cap is pressed axially downwardly such that spring 52 is compressed against the proximal bearing 38. The end cap 46 is then rotated by a tool engaging the hex boss 120 so that the pilot tabs 126 enter the respective lateral channel 104. Once the tabs 126 reach the end of the lateral channel 104, the tool 120 and corresponding force is removed from the hex boss 120 and the spring biases the cap upwardly along the holding channel 106. The ridge 108 functions to maintain the pilot tabs 126 within the holding channel 106. The wiring harness may then be attached to the termination boxes and the assembly is complete unless the cover is desired to be installed.
From the foregoing description, the advantages of the present invention are readily apparent. Primarily, the end cap 46, in conjunction with the unitary diffuser, allows for low-cost assembly of a blower or vacuum device. In this construction, the diffuser functions as a device for creating an axial flow of air which may then be directed as desired, and also as a motor housing for securely containing the stator and rotor assemblies in a controlled position. Likewise, such a construction allows for efficient and quality manufacturing of a blower assembly. Yet a further advantage of the present invention is that it allows for termination of the motor windings without the need for special tools that would otherwise be required. It will be appreciated that the relationship between the stator wall 80 and the end cap 46 may be modified such that the tabs are provided internally or externally from the stator wall, while the end cap is provided with the appropriate channels for receiving the tabs to allow for a spring biasing of the end cap for attachment to the wall. Likewise, it is also envisioned that the termination boxes may be configured in other positions with respect to the stator wall or they may extend upwardly from the curvilinear vanes, without connection to the stator wall, if desired. It is yet another advantage of the present invention to provide the notches so that they are aligned with the termination boxes and also with the holding channels 106 to maintain the windings in position.
Thus, it can be seen that the objects of the invention have been satisfied by the structure and its method for use presented above. While in accordance with the Patent Statutes, only the best mode and preferred embodiment has been presented and described in detail, it is to be understood that the invention is not limited thereto or thereby. Accordingly, for an appreciation of the true scope and breadth of the invention, reference should be made to the following claims.
Anstine, William E., Clausson, Earl J., Drapcho, Timothy J.
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Executed on | Assignor | Assignee | Conveyance | Frame | Reel | Doc |
Dec 06 2001 | CLAUSSON, EARL J | AMETEK, INC | ASSIGNMENT OF ASSIGNORS INTEREST SEE DOCUMENT FOR DETAILS | 012383 | /0874 | |
Dec 06 2001 | DRAPCHO, TIMOTHY J | AMETEK, INC | ASSIGNMENT OF ASSIGNORS INTEREST SEE DOCUMENT FOR DETAILS | 012383 | /0874 | |
Dec 06 2001 | ANSTINE, WILLIAM E | AMETEK, INC | ASSIGNMENT OF ASSIGNORS INTEREST SEE DOCUMENT FOR DETAILS | 012383 | /0874 | |
Dec 11 2001 | Ametek, Inc. | (assignment on the face of the patent) | / |
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